A Highly Sensitive Capacitive Displacement Sensor for Force Measurement Integrated in An Engineered Heart Tissue Platform

Milica Dostanić, Filippo Pfaiffer, Mahdieh Shojaei-Baghini,Laura M. Windt, Maury Wiendels, Berend J. van Meer,Christine L. Mummery, Pasqualina M. Sarro, Massimo Mastrangeli

2023 22nd International Conference on Solid-State Sensors, Actuators and Microsystems (Transducers)(2023)

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摘要
We present a novel capacitive displacement sensor integrated in an engineered heart tissue (EHT) platform to measure tissue contractile properties in situ. Co-planar spiral capacitors were integrated into the elastomeric substrate underneath the two micropillars of a previously developed EHT platform. The capacitor plates are displaced by the tension and compression that occurs in the substrate when the micropillars bend under contractile tissue force. For a contraction force of ~200 μN, applied in the middle of pillar length, the expected change in base capacitance is in the aF range. Readout of such low capacitance changes was achieved using a commercial low-noise high-sensitivity device. Characterization of static and dynamic sensor behavior agreed with numerical simulations, demonstrating a responsivity of 0.35 ± 0.07 fF/μN. Preliminary tests with cardiac tissues proved biocompatibility of the platform, as EHTs successfully formed and remained functional for at least 14 days.
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关键词
Organ-on-chip,heart-on-chip,engineered heart tissue,microfabrication,capacitive sensing
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